CN103792734A - Display device and display - Google Patents

Display device and display Download PDF

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Publication number
CN103792734A
CN103792734A CN201210428182.3A CN201210428182A CN103792734A CN 103792734 A CN103792734 A CN 103792734A CN 201210428182 A CN201210428182 A CN 201210428182A CN 103792734 A CN103792734 A CN 103792734A
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China
Prior art keywords
display device
substrate
display
barrier rib
layer
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CN201210428182.3A
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Chinese (zh)
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CN103792734B (en
Inventor
梁志明
庄国良
林玴名
陈淑兰
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Innolux Shenzhen Co Ltd
Chi Mei Optoelectronics Corp
Innolux Corp
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Innolux Shenzhen Co Ltd
Chi Mei Optoelectronics Corp
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Priority to CN201210428182.3A priority Critical patent/CN103792734B/en
Priority to CN201611215027.8A priority patent/CN106873250A/en
Publication of CN103792734A publication Critical patent/CN103792734A/en
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Publication of CN103792734B publication Critical patent/CN103792734B/en
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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1339Gaskets; Spacers; Sealing of cells
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K50/00Organic light-emitting devices
    • H10K50/80Constructional details
    • H10K50/84Passivation; Containers; Encapsulations
    • H10K50/844Encapsulations

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  • Physics & Mathematics (AREA)
  • Nonlinear Science (AREA)
  • Optics & Photonics (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Mathematical Physics (AREA)
  • Chemical & Material Sciences (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • General Physics & Mathematics (AREA)
  • Electroluminescent Light Sources (AREA)
  • Liquid Crystal (AREA)

Abstract

Disclosed are a display device and a display. The display device comprises a first substrate, a second substrate, a gapping component and a protecting film. The first substrate is provided with a first surface. The second substrate includes a displaying area and a non-displaying area around the displaying area, comprises an active component array allocated in the displaying area and is provided with a second surface opposite to the first surface. The gapping component comprises a plurality of gapping units and at least one gapping layer, the gapping units are disposed in the displaying area, and the gapping layers are disposed in the non-displaying area. The protecting film with a water-and-air penetration resisting function covers the gapping layers so as to form at least one obstructing wall, and the obstructing walls are in contact with the first surface and the second surface.

Description

Display device and display
Technical field
The present invention relates to a kind of image display, and particularly there is the display of frame glue (Seal).
Background technology
Some common image displays, for example, be liquid crystal display (Liquid CrystalDisplay, LCD) or display of organic electroluminescence (Organic Light Emitting Display, OLED) at present, conventionally all comprises image display panel.Image display panel generally includes two substrates and a frame glue, and wherein these two substrates are for example colored optical filtering substrates and active component array base board, and image display panel is by frame glue, these two substrates to be binded and formed mostly.
Except above-mentioned two substrates are binded, in liquid crystal display, frame glue can also prevent that liquid crystal material spill and leakage from flowing out, and also can block water or oxygen penetration enter the inside of image display panel, avoid organic illuminating element to make moist and reduce the life-span.But generally speaking, along with the past of time, frame glue tends to easily aging or embrittlement, enters the inside of image display panel to such an extent as to water or oxygen can penetrate frame glue, and image display is caused to bad impact.
Summary of the invention
The embodiment of the present invention provides a kind of display device, and described display device comprises first substrate, second substrate, gap assembly and diaphragm.First substrate has first surface, and second substrate comprises viewing area and non-display area, and wherein non-display area is surrounded on viewing area around.Second substrate comprises active cell array, and wherein active cell array is disposed at viewing area, and second substrate has second surface, and relative with first surface.Gap assembly comprises multiple spacers and at least one clearance layer, and wherein these spacers are positioned at viewing area, and clearance layer is positioned at non-display area.The diaphragm coverage gap layer with anti-aqueous vapor penetrability, forms at least one barrier rib according to this, and barrier rib contacts with first surface and second surface.
The embodiment of the present invention provides a kind of display, and described display comprises display device, circuit board and assemble case, and wherein circuit board and display device are electrically connected, and circuit board and display device configurations are in assemble case.Described display device comprises first substrate, second substrate, gap assembly and diaphragm.First substrate has first surface, and second substrate comprises viewing area and non-display area, and wherein non-display area is surrounded on around viewing area.Second substrate comprises active cell array, and wherein active cell array is disposed at viewing area, and second substrate has second surface, and relative with first surface.Gap assembly, comprises multiple spacers and at least one clearance layer, and wherein these spacers are positioned at viewing area, and clearance layer is positioned at non-display area.The diaphragm coverage gap layer with anti-aqueous vapor penetrability, forms at least one barrier rib according to this, barrier rib contact first surface and second surface.
In sum, the clearance layer that the embodiment of the present invention provides and be disposed at the protective seam outside clearance layer, forms barrier rib according to this.Even if frame glue is aging or embrittlement, the embodiment of the present invention is minimized water or oxygen penetration enters the probability in display device.In addition, the present invention can provide barrier rib to have more diversified design, thereby more preferably anti-sealing or oxygen penetration enter in display device.
For enabling further to understand feature of the present invention and technology contents, refer to following about detailed description of the present invention and accompanying drawing, but these explanations with appended graphic be only for the present invention is described, but not claim scope of the present invention is done to any restriction.
Accompanying drawing explanation
Figure 1A is the schematic top plan view of the display device of first embodiment of the invention.
Figure 1B is the diagrammatic cross-section shown in P-P section along the line in Figure 1A.
Fig. 2 A is the schematic top plan view of the display device of second embodiment of the invention.
Fig. 2 B is the diagrammatic cross-section shown in Q-Q section along the line in Fig. 2 A.
Fig. 3 is the diagrammatic cross-section of the display device of third embodiment of the invention.
Fig. 4 is the diagrammatic cross-section of the display device of fourth embodiment of the invention.
Fig. 5 A is the schematic perspective view of the display of one embodiment of the invention.
Fig. 5 B is the decomposing schematic representation of the display in Fig. 5 A.
[main element symbol description]
100,200,300,400 display device
110 first substrates
112 first surfaces
120,220 second substrates
122 second surfaces
124 active cell arrays
126 perimeter circuits
130 adhesion layers
140 liquid crystal layers
150 colored optical filtering substrates
152 the 3rd surfaces
154 chromatic filter layers
156a colored filter
156b light shield layer
160,260,360,460 gap assemblies
162,362 spacers
164,264,364,464 clearance layer
170 organic luminescent assembly arrays
180 diaphragms
182,282,382,482 barrier ribs
190 backlight modules
222 the 4th surfaces
240 packed layers
500 displays
510 assemble case
512,514 housing units
520 display device
530 circuit board assemblies
532 rigid circuit boards
534 flexible circuit boards
M1 viewing area
M2 non-display area
Embodiment
In alterations, show some exemplary embodiments, and below will consult alterations to describe more fully various exemplary embodiments.What deserves to be explained is, concept of the present invention may be with many multi-form embodiments, and should not be construed as and be limited to the exemplary embodiments set forth herein.Definite, provide these exemplary embodiments to make the present invention will be for detailed and complete, and will fully pass on the category of concept of the present invention to those of ordinary skill in the art.In each is graphic, can be for explicit and lavish praise on oneself size and the relative size in Ceng Ji district, and also similar numeral is indicated like all the time.
Although should be understood that herein and may describe various elements by term first, second, third, etc., these elements are not limited by these terms should.These terms are to distinguish an element and another element, and therefore, the first element of below discussing can be described as the second element and do not depart from the teaching of concept of the present invention.In addition, may use herein term " and/or ", this is that indication comprises any one and one or many person's all combinations in project of listing that are associated.
Figure 1A is the schematic top plan view of the display device of first embodiment of the invention, and Figure 1B is the diagrammatic cross-section shown in P-P section along the line in Figure 1A.Refer to Figure 1A and Figure 1B, display device 100 comprises first substrate 110, second substrate 120, liquid crystal layer 140 and backlight module 190.First substrate 110 and second substrate 120 combinations, liquid crystal layer 140 is disposed between first substrate 110 and second substrate 120, and first substrate 110 and second substrate 120 are all configured in the top of backlight module 190.
First substrate 110 has first surface 112, and second substrate 120 comprises viewing area M1 and non-display area M2, and wherein non-display area M2 is surrounded on around the M1 of viewing area.Second substrate 120 comprises active cell array 124, and wherein active cell array 124 is disposed at viewing area M1, and second substrate 120 has second surface 122.In addition, second substrate 120 also comprises perimeter circuit 126, and perimeter circuit 126 is disposed at non-display area M2, wherein perimeter circuit 126 can comprise short-circuiting bar (shorting bar) and/or plate inner grid unit (Gate-In-Panel element, GIP element).
On the first surface 112 of first substrate 110, can configure chromatic filter layer 154, accordingly, to form colored optical filtering substrates 150.In the present embodiment, chromatic filter layer 154 can comprise light shield layer 156b and the versicolor colored filter 156a of multi-disc, wherein the color of these colored filters 156a incomplete same.The chromatic filter layer 154 of colored optical filtering substrates 150 has the 3rd surface 152, and the 3rd surface 152 is relative with second surface 122.In addition, the assortment of these colored filters 156a is corresponding to active cell array 124.
But, in other embodiments, chromatic filter layer 154 also can be disposed on second substrate 120, is also, second substrate 120 comprises active cell array 124 and chromatic filter layer 154, and this is so-called COA substrate framework (Color filter on array).In addition, chromatic filter layer 154 can only include these colored filter 156a of all kinds, and light shield layer 156b also can be disposed on second substrate 120.The present invention does not limit the color of colored filter 156a and the form of chromatic filter layer 154.
In practice, light shield layer 156b can be positioned on first surface 112, light shield layer 156b exposes part first surface 112 to mark off multiple include monochrome pixels region (not shown), and these include monochrome pixels region (not shown) are in order to assortment colored filter 156a of all kinds.Light shield layer 156b main application is shading, therefore can be with the performance to prevent from having influence on because of the leakage of incident light image.The material that light shield layer 156b uses can be black resin, black photoresist etc., but the present invention is not as limit.
These colored filters 156a is arranged in these include monochrome pixels regions, and the assortment mode of colored filter 156a can be mosaic, trigonometric expression, straight strip type.Colored filter 156a is photoresistance of all kinds, and the material using can be chromatic photoresist material, but the present invention is not limited with material and the assortment mode of colored filter of all kinds.
In addition, should be noted that, according to the product demand of various display device, for example color sequence liquid crystal display, display device 100 also can be without any need for colored filter 156a.Therefore, the chromatic filter layer 154 shown in Figure 1B only, for illustrating, is not used for limiting the present invention.
First substrate 110 can by adhesion layer 130 and with second substrate 120 combinations.Specifically, adhesion layer 130 is positioned on the non-display area M2 of second surface 122, around viewing area M1, and binds first substrate 110 and second substrate 120, and wherein adhesion layer 130 can be thermosetting resin or light-hardening resin.
Liquid crystal layer 140 is disposed between first substrate 110 and second substrate 120.Specifically, the gap of liquid crystal layer 140 between first substrate 110 and second substrate 120, wherein the kind of liquid crystal can be nematic crystal (Nematic Liquid Crystal), smectic liquid crystal (Smectic LiquidCrystal), disc-like liquid crystal (Discotic Liquid Crystal), cholesterol liquid crystal (CholestericLiquid Crystal) etc.What deserves to be explained is, display device 100 can also comprise conducting film (not shown) and alignment film (not shown).Alignment film is folded in liquid crystal outside, in order to the direction of orientation liquid crystal.Conducting film is disposed on the 3rd surface 152 and second surface 122, also, and between alignment film and substrate, in order to conduct electricity controlling liquid crystal sense of rotation.Generally speaking, alignment film is generally macromolecular material, for example, be polyimide (Polyimide).Conducting film is generally indium and tin oxide film.But the present invention is not as limit.
Display device 100 comprises gap assembly 160, and gap assembly 160 is in order to maintain the gap (Cell gap) between first substrate 110 and second substrate 120.Gap assembly 160 comprises multiple spacers 162 and a clearance layer 164, and wherein spacer 162 is positioned at viewing area M1, and clearance layer 164 is positioned at non-display area M2.What deserves to be explained is, spacer 162 can be designed to spherical, polygon corner post shape, coniform, polygon pyramidal or dividing plate shape etc.Gap assembly 160 can be of all kinds or transparent photoresist, macromolecular material or silica material, form with lithography process, sputter (Sputtering process), chemical vapour deposition technique (Chemical Vapor Deposition, CVD) or the modes such as (Spray) of spraying.In addition, gap assembly 160 can be formed at the 3rd surface 152 or second surface 122.But, the present invention is not limited the design and craft demand of gap assembly 160.
In the present embodiment, on the 3rd surface 152, form the gap assembly 160 of sandwich construction, and this sandwich construction can be to form by photoresist is stacking.Spacer 162 is positioned at viewing area M1 and for coniform, clearance layer 164 is to be positioned at non-display area M2 and is the enclosure wall being surrounded on outside spacer 162.
Display device 100 comprises the diaphragm 180 with waterproof or oxygen penetration, and diaphragm 180 is covered in outside clearance layer 164, forms according to this barrier rib 182, wherein diaphragm 180 contact gap layers 164.What deserves to be explained is, diaphragm 180 can be silicon nitride (SiN x), monox (SiO x), silicon oxynitride (SiO xn y) or alundum (Al2O3) (Al 2o 3) etc. there is the inorganic material of waterproof or oxygen penetration.In addition, should be noted that, for more preferably anti-sealing or oxygen enter display device 100 inside, diaphragm 180 also can be formed in the M1 of viewing area.Accordingly, affect image demonstration in order to be unlikely, diaphragm 180 can also be the film material with the high grade of transparency.Generally speaking, diaphragm 180 can vacuum vapour deposition (Vacuum Evaporation Deposition), the mode such as vacuum splashing and plating method or chemical vapour deposition technique forms.But, the present invention is not limited the formation method of diaphragm 180.
Barrier rib 182 contacts first surface 112 and second surface 122, and penetrates into display device 100 inside in order to intercept water or oxygen.Specifically, in the present embodiment, barrier rib 182 is positioned at non-display area M2, and forms the wall body of a shaped as frame, and this wall body (being barrier rib 182) is around viewing area M1.Adhesion layer 130 also forms the wall body of a shaped as frame, and around barrier rib 182.
In the present embodiment, backlight module 190 is for providing a sufficient and uniform light source.For example, backlight module 190 can be side light-entering type backlight module (side type backlight module), direct type backlight module (direct type back light module) etc.The present invention is not limited backlight module 190.
In addition, it should be noted that, in the present embodiment, the quantity of barrier rib 182 is one, but in other embodiments, for more effectively anti-sealing or oxygen penetration enter display device inside, the quantity of barrier rib can be more than two, thereby the quantity that the present invention does not limit barrier rib 182 is only one.
Fig. 2 A is the schematic top plan view of the display device of second embodiment of the invention, and Fig. 2 B is the diagrammatic cross-section shown in Q-Q section along the line in Fig. 2 A.Refer to Fig. 2 A and Fig. 2 B, the display device 200 of second embodiment of the invention and the display device of the first embodiment 100 the two structural similarity, for example display device 100 all comprise liquid crystal layer 140 same with 200.But, between display device 100 and 200, still there is difference.To only introduce the two difference of display device 100 and 200 below, display device 100 no longer repeats to describe in detail with 200 the two identical feature.
The display device 200 of the second embodiment comprises first substrate 110, second substrate 220, packed layer 240 and gap assembly 260.First substrate 110 and second substrate 220 combinations, packed layer 240 is disposed between first substrate 110 and second substrate 220.In a second embodiment, display device 200 is display of organic electroluminescence (Organic Light Emitting Display, OLED), therefore second substrate 220 is that with second substrate 120 differences second substrate 220 also comprises organic light-emitting device array 170, and organic illuminating element array 170 can be used as light source and the display medium of display device 200.
Specifically, second substrate 220 comprises active cell array 124 and organic illuminating element array 170, and wherein organic illuminating element array 170 is electrically connected active cell array 124.Accordingly, and second substrate 220 has second surface 122, and second surface 122 is relative with the 3rd surface 152.Organic illuminating element array 170 has multiple organic illuminating element (not shown), and each organic illuminating element comprises the first electrode, organic luminous layer (not shown) and the second electrode (not shown), organic illuminating element array 170 is electrically connected by the first electrode and active cell array 124.
It should be noted that organic illuminating element array 170 can be the assortment being formed by the organic luminescent assembly of different colours, can be also the assortment being formed by organic white-light emitting element.Be self-emission device owing to there being light-emitting component, therefore display device 200 does not need to use backlight module.
In a second embodiment, gap assembly 260 comprises spacer 162 and three clearance layer 264.Specifically, the multiple spacers 162 that are distributed in the M1 of viewing area are formed on the 3rd surface 152, and three clearance layer 264 that are distributed in non-display area M2 are formed on second surface 122.What deserves to be explained is, according to different process requirements, spacer 162 can be to be formed on same surface with same processing step with clearance layer 264 simultaneously, for example, be formed on the 3rd surface 152 or second surface 122 simultaneously.But spacer 162 can be to be also formed on different surfaces with different processing steps from clearance layer 264.
Diaphragm 180 is covered in outside clearance layer 264; it is the outside surface of diaphragm 180 contact gap layers 264; and for more preferably anti-sealing or oxygen penetration enter in display device 200, diaphragm 180 is also covered on second surface 122, forms according to this three barrier ribs 282.Similarly, barrier rib 282 also contacts first surface 112 and second surface 122, and forms the 4th surface 222 in second surface 122, penetrates into display device 200 inside in order to intercept water or oxygen.
Specifically, in the present embodiment, three barrier ribs 282 are positioned at non-display area M2, and around viewing area M1.And adhesion layer 130 also forms the wall body of a shaped as frame, and around three barrier ribs 282.To it should be noted that diaphragm 180 is also covered on second surface 122 and extends into viewing area M1, and to affect image demonstration in order being unlikely, diaphragm 180 can also be the film material with the high grade of transparency.
It is worth mentioning that, in the time that barrier rib 282 is one (example barrier rib 182) as shown in Figure 1B, for definite anti-sealing or oxygen penetrate into display device inside, diaphragm 180 need reach a predetermined thickness.But, for example, when barrier rib is while being multiple (being barrier rib 282), even if diaphragm 180 has thinner thickness, also can be enough to anti-sealing or oxygen and penetrate into display device inside.So, can reduce the time that diaphragm 180 forms, be beneficial to the manufacture of display device.That is to say, the formation time that can shorten diaphragm 180 can reach this predetermined thickness.
But, should be noted that, although in a second embodiment, the quantity of barrier rib 282 is three, in other embodiments, the quantity of barrier rib 282 can be also more than two or three.So the quantity of the barrier rib 282 in Fig. 2 is only for illustrating, and non-limiting the present invention.
Fig. 3 is the diagrammatic cross-section of the display device of third embodiment of the invention.Refer to Fig. 3, the display device 300 of the 3rd embodiment is similar to the display device 100 of the first embodiment, and for example display device 300 also comprises backlight module 190.But, display device 100 and 300 still has difference between the two, and it is mainly: the barrier rib 382 of the 3rd embodiment is different from the barrier rib 182 of the first embodiment.
Display device 300 based on the 3rd embodiment is similar to the display device 100 of the first embodiment, below coordinates Fig. 3 that above-mentioned difference part is described, as for display device 100 and 300 the two identical feature, and repeated description no longer.
Refer to Fig. 3, in the present embodiment, gap assembly 360 comprises spacer 362 and three clearance layer 364.Specifically, the multiple spacers 362 that are distributed in the M1 of viewing area are formed on the 3rd surface 152, and three clearance layer 364 that are distributed in non-display area M2 are formed at respectively on first surface 112 and second surface 122.What deserves to be explained is, according to different process requirements, spacer 362 can be to be also formed on different surfaces in different processing steps from clearance layer 364.
Diaphragm 180 is covered in that clearance layer 364 is outer forms three barrier ribs 382 according to this, and is covered in that spacer 362 is outer forms multiple posts according to this.And for more preferably anti-sealing or oxygen penetration enter in display device 300, diaphragm 180 is also covered on the 3rd surface 152, second surface 122.Should be noted that, each barrier rib 382 and bar post all contact first surface 112 and second surface 122, and penetrate into display device 300 inside in order to intercept water or oxygen.
From the above, in the 3rd embodiment, these barrier ribs 382 are outside the M1 of viewing area.It should be noted that; because diaphragm 180 is covered on the 3rd surface 152 and second surface 122, and extend into viewing area M1 by non-display area M2, therefore; affect image demonstration in order to be unlikely, diaphragm 180 can also be the film material with the high grade of transparency.
In addition, in the 3rd embodiment, wherein a clearance layer 364 is positioned at outside adhesion layer 130, and other clearance layer 364 are between spacer 362 and adhesion layer 130.Similarly, adhesion layer 130 also forms the wall body of a shaped as frame.But, should be noted that, in other embodiments, can be also that two clearance layer 364 are positioned at outside adhesion layer 130, and the quantity of clearance layer 364 can be also more than three.So the position of the adhesion layer 130 in Fig. 3 and the quantity of clearance layer 364 are only for illustrating, not in order to limit the present invention.
Fig. 4 is the diagrammatic cross-section of the display device of fourth embodiment of the invention.Refer to Fig. 4, the display device 400 of the 4th embodiment is similar to the display device 300 of the 3rd embodiment, and display device 400 also comprises backlight module 190.But, the present invention is not limited backlight module 190. Display device 400 and 300 still has difference between the two, and it is mainly: the barrier rib 482 of the 4th embodiment is different from the barrier rib 382 of the 3rd embodiment.
Display device 400 based on the 4th embodiment is similar to the display device 300 of the 3rd embodiment, below coordinates Fig. 4 so that above-mentioned difference part to be described, as for display device 400 and 300 the two identical feature, and repeated description no longer.
Refer to Fig. 4, in the 4th embodiment, gap assembly 460 comprises spacer 162 and a clearance layer 464.Specifically, the multiple spacers 162 that are distributed in the M1 of viewing area are formed on the 3rd surface 152, and the clearance layer 464 being distributed in non-display area M2 is formed at first surface more than 112.It should be noted that diaphragm 180 is coated on outside clearance layer 464, the outside surface that wherein diaphragm 180 can contact gap layer 464, forms to intercept water or oxygen and penetrates into the barrier rib 482 of display device 400 inside according to this.And barrier rib 482 also forms the wall body of a shaped as frame around viewing area M1.Adhesion layer 130 is covered in outside barrier rib 482, and the outside surface of contact barrier rib 482.Accordingly, in order to stick together first substrate 110 and second substrate 120.
But, should be noted that, in other embodiments, the position of the adhesion layer 130 in Fig. 4 and the quantity of clearance layer 364 are only for illustrating, not in order to limit the present invention.
Fig. 5 A is the schematic perspective view of the display of one embodiment of the invention, and Fig. 5 B is the decomposing schematic representation of the display in Fig. 5 A.Refer to Fig. 5 A and Fig. 5 B, display 500 comprises assemble case 510, display device 520 and circuit board assemblies 530, and wherein circuit board assemblies 530 is all disposed in assemble case 510 with display device 520.
Assemble case 510 can comprise two housing units 512,514, and housing unit 512 and housing unit 514 can be by engaging or the mode of screw locking is carried out combination, and display device 520 and circuit board assemblies 530 are disposed between housing unit 512 and 514.By housing unit 512 and 514 combinations, display device 520 is configured in assemble case 510 with circuit board assemblies 530.But, in other unshowned embodiment, according to the design requirement of assembling, assemble case 510 also can be divided into three or three above assemblies, and circuit board assemblies 530 also can be adopted and be disposed at other appropriate means in assemble case 510 with display device 520.Therefore, the present invention is not as limit.
What deserves to be explained is, display device 520 is the display device 100,200,300 or 400 in previous embodiment, so display device 520 can be liquid crystal indicator or organic light-emitting display device etc.The present invention is not limited with the kind of display device 520.
Display device 520 is electrically connected circuit board 530, and circuit board assemblies 530 comprises the electronic components such as power supply unit, driving element, multiple passive device and multiple active members.Circuit board assemblies 530 can be a kind of hard circuit board (flex-rigid circuit board).Specifically, circuit board assemblies 530 comprises rigid wiring board (rigid circuit board) 532 and bendable wiring board 534(flexible circuit board).
Bendable wiring board 534 is connected between rigid wiring board 532 and display device 520.Accordingly, by bendable wiring board 534, circuit board assemblies 530 is electrically connected display device 520.In addition,, in embodiment, circuit board assemblies 530 also can be electrically connected display device 520 by many wires.But, the kind to circuit board assemblies 530 and electric connection mode are not limited in the present invention.
Because display device 520 can be liquid crystal indicator or organic light-emitting display device etc., therefore display device 520 can be applied to multiple different display product.That is to say, display 500 can be the screen of screen, LCD TV and the hand-hold electronic device of the LCD screen (as shown in Fig. 5 A and Fig. 5 B) that uses of desktop computer, notebook computer, wherein above-mentioned hand-hold electronic device is for example mobile phone, digital camera, digital code camera, hand held Game device or personal digital aid (PDA) (Personal Digital Assistant, PDA) etc.
In sum, the clearance layer that the embodiment of the present invention provides and be disposed at the protective seam outside clearance layer, forms barrier rib according to this.Even if frame glue is aging or embrittlement, the embodiment of the present invention is minimized water or oxygen penetration enters the probability in display device.In addition, the present invention can provide barrier rib to have more diversified design, thereby more preferably anti-sealing or oxygen penetration enter in display device.
In addition, the present invention can be applied to multiple different display product.It is worth mentioning that, according to above description, display of the present invention can be liquid crystal display or display of organic electroluminescence, but in other inventive embodiments, display device can design according to the demand of product, so that display of the present invention is the display beyond liquid crystal display and display of organic electroluminescence, therefore not limit display be liquid crystal display or display of organic electroluminescence in the present invention.
The foregoing is only embodiments of the invention, it is not in order to limit scope of patent protection of the present invention.Any those of ordinary skill in the art, not departing from spirit of the present invention and scope, the change of doing and the equivalence of retouching are replaced, and are still in scope of patent protection of the present invention.

Claims (10)

1. a display device, is characterized in that, described display device comprises:
One first substrate, has a first surface;
One second substrate, be combined with described first substrate, described second substrate comprises a viewing area and a non-display area around described viewing area, and described second substrate comprises an active cell array, described active cell array is disposed at described viewing area, described second substrate has a second surface, and described second surface is relative with described first surface;
One gap assembly, comprises multiple spacers and at least one clearance layer, and described spacer is positioned at described viewing area, and described clearance layer is positioned at described non-display area; And
One diaphragm, has anti-aqueous vapor penetrability, and covers described clearance layer, forms according to this at least one barrier rib, and described barrier rib contacts with described first surface and described second surface.
2. display device according to claim 1, is characterized in that, described diaphragm is an inorganic material film.
3. display device according to claim 1, is characterized in that, described clearance layer is connected with described first surface, and described diaphragm also covers described clearance layer and described first surface.
4. display device according to claim 1, is characterized in that, described clearance layer is connected with described second surface, and described diaphragm is also covered in described clearance layer and described second surface.
5. display device according to claim 1, is characterized in that, described display device also comprises an adhesion layer, is disposed at described non-display area, and described adhesion layer is around described viewing area, and binds described first substrate and described second substrate.
6. display device according to claim 5, is characterized in that, described barrier rib is around described adhesion layer.
7. display device according to claim 5, is characterized in that, described barrier rib is around described viewing area, and described adhesion layer is around described barrier rib.
8. display device according to claim 5, is characterized in that, described adhesion layer covers described barrier rib.
9. display device according to claim 5, it is characterized in that, described display device comprises multiple described barrier ribs, and at least one described barrier rib is positioned at outside described adhesion layer, at least described in another barrier rib between described viewing area and described adhesion layer.
10. a display, is characterized in that, described display comprises
Display device according to claim 1;
One circuit board assemblies, described circuit board assemblies and described display device are electrically connected; And
One assemble case, described circuit board assemblies and described display device configurations are in described assemble case.
CN201210428182.3A 2012-10-31 2012-10-31 Display device and display Active CN103792734B (en)

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CN106873253A (en) * 2017-04-19 2017-06-20 京东方科技集团股份有限公司 A kind of display panel and liquid crystal display device
CN108107632A (en) * 2016-11-25 2018-06-01 南京瀚宇彩欣科技有限责任公司 Display panel and its manufacturing method
CN110097822A (en) * 2019-04-04 2019-08-06 深圳市华星光电技术有限公司 Display panel structure and preparation method thereof
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CN113075810A (en) * 2021-03-24 2021-07-06 重庆惠科金渝光电科技有限公司 Display panel and display terminal
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JP2016054038A (en) * 2014-09-03 2016-04-14 株式会社ジャパンディスプレイ Display device
CN105549272A (en) * 2016-01-29 2016-05-04 武汉华星光电技术有限公司 Packaging structure and method of display panel
CN108107632A (en) * 2016-11-25 2018-06-01 南京瀚宇彩欣科技有限责任公司 Display panel and its manufacturing method
CN106873253A (en) * 2017-04-19 2017-06-20 京东方科技集团股份有限公司 A kind of display panel and liquid crystal display device
WO2019200884A1 (en) * 2018-04-20 2019-10-24 京东方科技集团股份有限公司 Display panel and manufacturing method therefor, and display device
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CN113075810A (en) * 2021-03-24 2021-07-06 重庆惠科金渝光电科技有限公司 Display panel and display terminal
CN113075810B (en) * 2021-03-24 2022-12-23 重庆惠科金渝光电科技有限公司 Display panel and display terminal
CN113253381A (en) * 2021-05-24 2021-08-13 佘晓峰 Light guide structure capable of controlling light emitting position
CN113253381B (en) * 2021-05-24 2023-08-25 佘晓峰 Light guide structure capable of controlling luminous position

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